Second video in a four-part series following a project to make lightweight, super tough sledges for a polar world-record attempt. Introduction to the project here: youtu.be/li7ug4-k4mk
In this tutorial we demonstrate the correct method for laminating larger composite moulds using our Uni-Mould rapid tooling system. The method shown allows a single laminator to lay-up a mould of almost any size. The tutorial covers suitable pattern materials and coatings, release agent application, gelcoat application, coupling/tie-coat application and the main layup.
Second video in a four-part series following a project to make lightweight, super tough sledges for a polar world-record attempt. Introduction to the project here: youtu.be/li7ug4-k4mk
In this tutorial we demonstrate the correct method for laminating larger composite moulds using our Uni-Mould rapid tooling system. The method shown allows a single laminator to lay-up a mould of almost any size. The tutorial covers suitable pattern materials and coatings, release agent application, gelcoat application, coupling/tie-coat application and the main layup.
In this composites video tutorial we revisit the topic of forged carbon fibre to take a more detailed look at CAD techniques and best-practices when designing your 3D printed compression moulds, and also provide more detail on increasing component strength with the addition of long-strand unidirectional carbon fibre into the chopped tow reinforcement.
00:00 - Introduction 02:33 - Drone Arm Mould Design 06:57 - Linkage Mould Design 08:23 - 3D Printing the Moulds 09:28 - Mould Preparation 12:00 - Fibre Optimisation & Preparation 15:15 - Loading the Fibre & Resin 16:36 - Mould Compression 17:15 - Demoulding 17:54 - Finishing the Parts 18:45 - Strength Testing 20:10 - ConclusionPractical CAD Techniques for Composite Pattern/Mould DesignEasy Composites Ltd2024-02-23 | Composites video tutorial from Easy Composites covering the design principles and practical CAD techniques required when preparing 3D models for CNC machining into composite patterns. In the tutorial, we’re using Autodesk Fusion 360, although the tools and processes are generic and would apply equally to any other engineering CAD package such as Catia, Solidworks or Onshape.
The tutorial begins by looking at the more basic steps of checking draft angles, adding trim allowance, closing apertures, creating flanges and setting up the stock material. The second half of the tutorial looks at a more complex ‘split-mould’ and covers the process of using draft analysis to create the optimum parting line, as well as design-in features such split-mould clamping bushes.
00:00 - Introduction 02:00 - CAD Packages and Features 03:39 - Draft Analysis 05:42 - Creating Trim Allowance 06:56 - Creating Mould Flanges 10:42 - Cutting into Stock 18:26 - Split Mould Parting Line and Faces 25:06 - Stock Material Cutting 28:10 - Mould Alignment with Clamping Bushes 28:32 - Drawing the Bush Locating Pads 33:55 - Creating the Pattern
For a full list of products used in the tutorial or to discuss any questions you may have about taking your composites project from the screen to the real world, visit the tutorial project page on the Easy Composites website:
In this composites tutorial we take a deep dive into the world of carbon fibre tubes, discussing the different types, their construction, advantages and disadvantages. We compare carbon fibre tubes to each other, and also benchmark them against stainless steel and aluminium to see how carbon fibre tubes perform and compare in a range of tensile, compressive, torsional and 3-point bend tests.
Don't choose a carbon fibre tube for your next project without watching this video!
00:42 - The Different Types of Carbon Fibre Tube 05:25 - Mechanical Testing Introduction 06:43 - Tensile Strength Test 08:47 - Compressive Strength Test 09:37 - Torsional Stiffness Test 11:09 - 3-Point Bend Test 13:43 - Pultruded Tube Results & Considerations 15:43 - Roll Wrapped Tube Results & Considerations 18:14 - Limitations of Carbon Fibre Tubes
Composites training tutorial covering the entire process, from start to finish, for recreating an existing part using F1-style prepreg carbon fibre. The tutorial is aimed at those new to composites, or experienced in composites but new to prepreg, and is intended to remove as many barriers as possible that may stand in the way of working with this material, including demonstrating how a domestic oven can be used for post-curing moulds, and curing prepregs.
00:00 Introduction 00:43 Preparing the Pattern 03:09 Making the Mould 06:33 Trimming and Finishing the Mould 07:41 Post-Curing the Mould 08:32 Using a Domestic Oven for Composites 12:02 Laminating the Prepreg Surface Ply 15:03 Vacuum Debulking the Surface Ply 17:00 Laminating the Prepreg Backing Ply 17:44 Vacuum Bagging for the Cure 19:22 Oven Curing the Prepreg 21:32 Demould and TrimResin Infusion of a 16 Flax Fibre & Bio Resin CanoeEasy Composites Ltd2023-09-01 | Product links ► easycomposites.co.uk/learning/flax-and-bio-resin-canoe Further information and links ▼
In this composites training video, we continue to explore the topic of more sustainable materials in composites by building a full scale (5m/16') canoe, dubbed the 'Flaxplorer', using flax fibre, balsa wood and an epoxy bio resin using the resin infusion method. The video focusses on the lamination and infusion of the flax and core but includes fitting out the boat with gunwales, seats and yoke.
00:00 - Introduction 01:41 - Preparing the mould and selecting the reinforcement 04:09 - Cutting the kit of reinforcement 04:47 - Preparing the balsa core 07:42 - Laying up the reinforcement and core 10:27 - Vacuum bagging 16:26 - Infusing the bio-resin 18:57 - Demoulding and rough trim 20:13 - XCR coating 21:56 - Woodwork and fit-out 23-49 - The finished boatMoulding Hollow Carbon Fibre Parts Using a Low-Melt Metal MandrelEasy Composites Ltd2023-06-09 | Product links ► easycomposites.co.uk/learning/low-melt-metal-core-moulding Further information ▼
In this composites training video, we demonstrate how low-melting point metal alloys can be used as sacrificial cores/mandrels when manufacturing hollow composite structures.
The process can be used to produce complex hollow structures, such as tubes or frame components by laminating prepreg carbon fibre around a cast metal mandrel, which is then cured at elevated temperature before the temperature is increased further to melt-out the metal core, leaving the hollow composite structure.
For full details on the products used, as well as a step-by-step breakdown of the process, see the project page on the Easy Composites website:
00:00 Introduction 02:23 Making The Pattern 03:05 Setting up Barriers for the Silicone Mould 06:03 Pouring the Silicone Moulds 07:52 Casting the Low-Melt Metal Mandrels 13:37 Laminating the Components 16:52 Curing the Prepreg 19:04 Melting Out the Metal Mandrel/Core 20:15 Finishing WorkHow to Make High Temp Carbon Fibre Moulds for Prepreg Using Resin InfusionEasy Composites Ltd2023-04-14 | Product links ► easycomposites.co.uk/learning/resin-infusion-of-high-temperature-tooling Further information and links ▼
In this composites training video, we demonstrate how accurate high temperature carbon fibre moulds, suitable for prepreg part production, can be produced using the resin infusion process. Advantages to this process include reduced material costs compared to tooling prepregs, compatibility with a wide range of pattern materials, and the possibility of an ambient temperature initial cure for maximum dimensional accuracy.
00:00 - Different methods for high temperature moulds 00:18 - Introduction 04:16 - Laying up reinforcement 11:24 - Infusion Stack and Consumables 15:51 - Initial Cure 16:41 - Breakdown and demould 17:41 - Post-curing the mould 19:57 - Trim and finishing
For further information, including links to all products used in the tutorial, see the tutorial's project page on the Easy Composites website:
In our previous video tutorial, we created a carbon fibre motorsport wing using a relatively simple 'mouldless' construction method of wrapping carbon fibre and resin around a hot-wired foam core. In this follow-up video, we test the wing to destruction to find out how much downforce it can withstand and how it will fail when it does.
For further information, including links to all products used in the tutorial, see the tutorial's project page on the Easy Composites website:
In this step-by-step video tutorial we demonstrate a method of making high performance carbon fibre downforce/aero wings for motorsport without needing a mould. Instead, carbon fibre is laminated onto the outside of an XPS foam core which has been profiled using a hotwire cutter. Mylar is used to smooth the carbon fibre and a vacuum bag is used for consolidation. End plates, which include aluminium mounting inserts, are made using Nomex honeycomb bonded to carbon fibre sheet.
00:00 - Introduction 01:37 - Hotwire cutting XPS foam core 04:05 - Machining wing inserts 05:21 - Cutting Mylar surface film 06:14 - Prepare the vacuum bag 06:31 - Preparing the carbon reinforcement 07:33 - Wet-out reinforcement with epoxy 09:18 - Wrapping the carbon fibre around the foam core 11:22 - Machining the carbon sheet for the end plates 13:06 - Aluminium inserts for the end plates 14:56 - Cutting and bonding Nomex honeycomb 18:09 - Filling the edge of the honeycomb panel 18:36 - Assembling the finished wing
For further information, including links to all products used in the tutorial, see the tutorial's project page on the Easy Composites website:
Vacuum bagging is an integral part of many composites manufacturing processes, including prepreg, resin infusion and conventional vacuum consolidated hand-layup but getting vacuum bags to seal properly and reliably can be difficult and frustrating, especially for those relatively new to the process.
In this video tutorial we use our many years of experience of vacuum bagging to go through all the possible causes of leaks in vacuum bags, how to avoid them in the first place, how to test for them, how to locate them and how to fix them. We will also discuss when to give up and make the decision to re-bag a part.
Most of the tools and equipment used in the tutorial are available from Easy Composites and are listed on the video's Project Page in our Learning Area:
In this composites video tutorial we cover the simplest and lowest cost method for creating an original moulded carbon fibre (CFRP) component. To minimise materials and cost, the process avoids the need for a well-finished pattern or female mould by laminating the carbon fibre and resin directly onto a shaped XPS foam pattern. The carbon fibre is then overcoated with additional layers of epoxy resin before the surface is flatted and polished to a smooth finish. Once the surface is good, the polystyrene foam is removed from the inside of the component.
This method is not without its disadvantages but for prototypes and one-off components, especially where budgets or equipment are constrained - such as many school (Greenpower) and university race (Formula Student, Eco-Marathon etc.) teams - this method can yield acceptable quality components whilst minimising cost, waste and time.
Most of the tools and equipment used in the tutorial are available from Easy Composites and are listed on the video's Project Page in our Learning Area:
In this composites video tutorial we take a closer look at flax fibre and its use as a reinforcement in composites. We discuss the advantages and disadvantages of this natural fibre as a reinforcement, as well as discussing some of the environmental and performance considerations of flax fibre laminates.
In the second half of the tutorial includes a practical demonstration, performing a resin infusion of a flax fibre reinforced chair moulding using a high bio-content epoxy resin.
Full Project Details UK and World ► https://www.easycomposites.eu/learning/flax-fibre-in-composites EU ► https://www.easycomposites.eu/learning/flax-fibre-in-compositesHow Strong is Forged Carbon Fibre? Forged Carbon vs Aluminium vs Markforged vs OnyxEasy Composites Ltd2022-03-24 | Order the kit ► easycomposites.co.uk/forged-carbon-fibre-kit Further information and links ▼
In this composites video tutorial we take a look at the mechanical properties of 'forged' carbon fibre components, made using randomly oriented short-strand carbon fibre, and compare them to the strength of cast aluminium, 3D printed Onyx and Markforged 3D printed carbon fibre.
We run a series of basic mechanical tests to compare their tensile strength and stiffness and then perform a 'real word' test based on a bending load on a brake lever component made from these different materials.
This tutorial is a follow up to our tutorial on how to make forged carbon fibre parts: youtu.be/25PmqM24HEk
In this composites video tutorial we demonstrate how anyone can make solid, high performance, forged carbon fibre parts using a two-part compression mould.
In the tutorial we use a two-part compression mould made using a special epoxy casting resin and a three-part mould using a conventional FDM 3D printer. Throughout the tutorial, we use the materials included in the Forged Carbon Fibre Development Kit from Easy Composites.
In this composites video tutorial we demonstrate how to create a two-part 'matched-tool' compression mould suitable for creating genuine pressure forged carbon fibre components in anticipation of our next tutorial where we will demonstrate the forged carbon fibre process itself.
In this tutorial we use a special aluminium-filled epoxy casting resin called TC80 Tool Cast to cast the two halves of a compression mould using an original injection moulded component as the pattern.
Product links (EU customers) ► https://www.easycomposites.eu/tool-cast-epoxy-casting-resin-for-vac-forming-tools ► https://www.easycomposites.eu/newplast-plasticine-modelling-clay ► https://www.easycomposites.eu/soft-yellow-filleting-filling-waxCarbon Fibre Reinforcement Weights and Weaves ExplainedEasy Composites Ltd2021-10-30 | ►Full project details and links easycomposites.co.uk/learning/carbon-fibre-cloth-explained Further information and links ▼
In this tutorial we take a look at different types of carbon fibre reinforcement and discuss their various properties such as weight, weave and format, and tow size (k-count). By the end of the tutorial you should have a better understanding of how these properties impact the behaviour of the reinforcement and therefore how to choose the right carbon fibre fabric for your project.
All of the different carbon fibre reinforcements demonstrated in the tutorial are available to buy from the Easy Composites website.
Please note, EU customers should now use https://www.easycomposites.eu to buy products directly from our new EU subsidiary based in the Netherlands.
In this video tutorial, we take a look at microporous technology for use in resin infusion, specifically MTI Hose® from DD-Compound, and our MVL™ and MVS™ microporous vacuum hose and strip. The tutorial provides an introduction to microporous membrane products, explaining how they work, how to use them and demonstrating situations where they are most useful.
All of the products used in the tutorial, including the MTI and MVL hoses, the MVS strip and all of the other resin infusion consumables are available to buy from the Easy Composites website:
►Thanks to Dynamism for help and advice with the 3D printer dynamism.com/3dp-cf
In this video tutorial we demonstrate how a genuine carbon fibre part can be created by hand laminating directly into a 3D printed mould.
In the tutorial we begin by 3D printing the female mould on a conventional FDM printer (an Ultimaker S3) which we then coat with PVA release agent. The carbon fibre part is then hand laminated directly into the mould using no specialist tools or equipment. Once the parts have cured they are demoulded, some minor repairs are made and then they are coated and finished using XCR coating resin.
Except for the 3D printer and filament, all materials used in the tutorial are available from Easy Composites, including the EL2 Laminating Epoxy and 2x2 Twill carbon fibre cloth which are both included in Easy Composites' Carbon Fibre Laminating Starter Kit.Making a Composite Mould for a Carbon Fibre Part from a 3D Printed PatternEasy Composites Ltd2021-02-04 | ►Full length version plus product links easycomposites.co.uk/making-a-composites-mould-from-a-3d-print
Further information and links ▼
►Thanks to Dynamism for help and advice with the 3D printer dynamism.com/3dp-cf
Learn how to prepare and coat a 3D print using XCR Epoxy Coating Resin so that it can be used to produce production quality composite moulds suitable for making carbon fibre parts, including using prepregs.
In this tutorial we 3D print a composite patterns for drone shell components. We then smooth and key the surface before applying the special XCR epoxy coating resin. The resin is flatted and polished to produce production quality 3D printed pattern, ready to take moulds off. In this case, we use Easy Composites' EG160 epoxy gelcoat and EMP160 epoxy laminating paste to make moulds suitable for high temperature use, including for use with prepregs. We then demonstrate laminating prepreg into these mould and oven curing under vacuum to produce the finished components.
This in-depth guide to resin infusion shares a lot of the expert advice from our resin infusion training course. It includes advice on positioning reinforcement (in this case Kevlar), inclusion of core materials (3DCore), positioning of resin feed connectors and spiral for good resin distribution and flow rates, and where to position vacuum lines. We cover vacuum bagging technique, drop testing, and running the infusion itself.
The video is the fifth and final part of our Dark Ice Project series covering the manufacture of high-performance polar expedition sledges from design inception to completed components.Choosing Composite Reinforcements for Impact Strength; Kevlar, Carbon, Innegra, DiolenEasy Composites Ltd2020-12-10 | ►Full Project Guide: easycomposites.co.uk/learning/choosing-composite-reinforcements-for-impact-strength Further information and links ▼
This tutorial is the third in a four-part series following a project to make lightweight, super-tough sledges for a polar world-record expedition. Find out about the project in this interview with Expedition Coordinator Alex Hibbert: youtu.be/li7ug4-k4mk
This tutorial is the first in a four-part series following a project to make lightweight, super-tough sledges for a polar world-record expedition. Find out about the project in this interview with Expedition Coordinator Alex Hibbert: youtu.be/li7ug4-k4mk
In this tutorial we show how to hand laminate a simple carbon fibre component (a frame protector) using the epoxy composite mould we made in a previous tutorial and the Easy Composites Carbon Fibre Laminating Starter Kit. We then demonstrate how to vacuum bag the component using professional vacuum bagging equipment and materials and also an alternative method using little more than a vacuum cleaner and a vacuum storage bag to produce a high quality carbon fibre part.
► Vlad on Instagram @VYworks ► Easy Composites on Instagram @easycomposites
In-depth technical discussion with bike designer Vlad Yordinov covering the entire process of taking an original CAD design for a downhill mountain bike frame through to a fitted out, race-ready prototype.
Working with Easy Composites from the start of the project, this video includes footage and discussion of CNC machining the epoxy pattern, creation of the moulds, layup of the bike frame sections and finally demould and assembly of the finished bike. All materials and equipment used in the making of this award-winning frame were supplied by Easy Composites.
In depth product spotlight video showing the features, performance and operation of the 26L Professional Vacuum Degassing System from Easy Composites Ltd.
The DS-26P system is a turn-key degassing system engineered to offer the highest possible performance and reliability. It's fully integrated design provides a compact footprint, valve-less start/stop operation and extremely fast vacuum pull-down.
The system is available to buy from the Easy Composites website and is available for shipping worldwide.DVP EC.4 Composites Vacuum Pump for Vacuum Bagging - Product DemoEasy Composites Ltd2018-05-26 | DVP EC.4 Compact Composites Vacuum Pump: easycomposites.co.uk/ec4-composites-vacuum-pump
In depth product spotlight video showing the features, performance and operation of the EC.4 Compact Composites Vacuum Pump from Easy Composites Ltd.
This vacuum pump is built with the composites professional in mind and is ideal as a compact, portable solution for vacuum bagging, prepreg laminating, resin infusion, veneer pressing and some vacuum degassing applications.
In this video tutorial, we have created a complete step-by-step guide demonstrating how to use the incredible GlassCast®50 epoxy resin to create a stunning resin river table. The guide is aimed at furniture makers, craftspeople, woodworkers, and keen DIY'ers and creatives.
We cover the entire process from cutting and preparing the wood, setting up barriers to contain the resin, sealing the wood, pouring the resin through to finishing and polishing the table.
Complete introduction to out-of-autoclave prepreg carbon fibre using the special XPREG® XC110 system. Explains what prepregs are, how they are stored, shipped and handled and what materials and equipment are needed to work with them.
Advanced composites video tutorial demonstrating the process for making a highly accurate, temperature stable prepreg carbon fibre mould suitable for the production of preprep carbon fibre components. This tutorials continues from where we left off with the CNC produced epoxy pattern and demonstrates the correct technique for laminating, bagging and curing a prepreg carbon fibre composite mould tool.Precision Patterns and Moulds from 3D CAD - CNC Machining Epoxy Tooling BoardEasy Composites Ltd2017-10-31 | Click this link for a full list of products used in the video: easycomposites.co.uk/learning/cnc-machining-epoxy-tooling-board
Easy Composites video tutorial demonstrating how a 3D CAD design can be machined on a CNC router to produce a highly accurate pattern or low volume mould. Includes information on hand finishing, sealing and glossing the pattern.How to Lay a Penny Floor with GlassCast 3 Clear Epoxy ResinEasy Composites Ltd2017-07-07 | Link to buy: easycomposites.co.uk/glasscast-clear-epoxy-surface-coating-resin
This complete guide explains the process for creating an epoxy resin coated penny floor. After our GlassCast 3 product was used in Matt Giles' UK PENNY FLOOR video (which went viral with hundreds of millions of views) we've been inundated with requests for a video tutorial on how to prepare you floor and properly mix and pour the resin. This detailed tutorial explains the proper technique to ensure users get perfect results from this unique product.Ultimate Carbon Fibre Skinning/Wrapping Tutorial - Sofies Rifle StockEasy Composites Ltd2016-10-03 | Using our XCR Carbon Fibre Skinning Starter Kit easycomposites.co.uk/carbon-fibre-skinning-starter-kit , learn how to skin (wrap) existing parts in a layer of genuine carbon fibre. To show how effective the process can be, even on a very complex shape, we reinforce British biathlete Sofie Hopkins' broken rifle stock by skinning it with a layer of carbon fibre. The result is much stronger and looks amazing.
The XCR resin system is specially developed for carbon fibre skinning by Easy Composites and allows a stunning, glossy layer of carbon fibre to be applied to almost any parts including interior trim, vehicle panels, furniture, sports equipment and much more.Make Precision Carbon Fibre Parts Using A Desktop CNC RouterEasy Composites Ltd2016-06-29 | Detailed video tutorial covering all the steps from CAD design to finished component. We use Autodesk Fusion 360, configure the CAM settings, generate the G-Code, setup the Stepcraft router and then start the machining process.
The fantastic CAD/CAM software used in this tutorial is Autodesk's Fusion 360 which is currently available free of charge to many groups (including students and educators). Check out:
http://www.autodesk.com/products/fusion-360/overviewResin Infused Skateboard Using Carbon Fibre, Flax and Bio ResinEasy Composites Ltd2016-03-25 | Step by step tutorial demonstrating how to work with environmentally sustainable (greener) composite materials like flax and epoxy bio resin. This longboard even uses a recycled core made from cut down shipping pallets! All materials and equipment available from the Easy Composites website easycomposites.co.ukHow to Make Carbon Fibre Sheet - 3 Alternative MethodsEasy Composites Ltd2016-01-13 | Detailed tutorial covering some basic theory and practical advice on how to make a carbon fibre(fiber) sheet using different manufacturing processes of hand layup, resin infusion and out-of-autoclave (dry) carbon fibre.
The oven we use to cure the prepreg carbon fibre is available here: easycomposites.co.uk/ov301-precision-curing-ovenHow to Make Prepreg/Dry Carbon Fibre Parts (Carbon Fiber Airbox Pt. 3)Easy Composites Ltd2014-06-30 | easycomposites.co.uk/prepreg-carbon-fibre-starter-kit Advanced composites video tutorial explaining exactly how to make professional quality prepreg (dry) carbon fibre (fiber) parts without the need for autoclave curing. In the video we make a complex airbox part using the 3-part split-mould we made earlier in the video series.
The curing oven we use is available from : easycomposites.co.uk/ov301-precision-curing-ovenFibreglass/FRP Split-Mould Making Guide (Carbon Fibre Airbox Pt.2)Easy Composites Ltd2014-05-06 | The ultimate guide on how to make a fibreglass/FRP/GRP split-mould/multi-part mould. Step-by-step instructions on how to create a 3-part mould for a complex airbox pattern. This is part two of a three-part project on how to make an ultra-light, carbon fibre airbox using state-of-the-art prepreg (dry) carbon fibre. Visit easycomposites.co.uk for more details or to buy the best in advanced composite materials.Composite (Fibreglass) Pattern Making Tutorial (Carbon Fibre Airbox Pt.1)Easy Composites Ltd2013-10-22 | Professional video tutorial from easycomposites.co.uk demonstrating a step-by-step process for producing a dimensionally accurate, well finished composite pattern by hand. If you want to make a fibreglass or carbon fibre part based on an original design idea then follow this process to produce your pattern so that you can produce your moulds and then finally your finished part.How to Cut Carbon Fibre Sheet and Carbon Fiber Parts (Technique & Safety)Easy Composites Ltd2013-06-27 | Very detailed guide to cutting and shaping carbon fibre sheet and carbon fibre parts (like a seat-post). In this guide we dispel some myths surrounding cutting carbon fibre (no it won't kill you) and demonstrate exactly what you can expect when cutting different types of sheet, tube and parts using a range of common workshop tools.Composite Training Courses - Learn Expert Manufacturing Techniques for Carbon FibreEasy Composites Ltd2013-05-11 | easycomposites.co.uk/training-courses As well as our online tutorials, Easy Composites also offer in-house practical training courses for advanced composites. In this short promotional video we try to give you a flavour of our courses which cover topics like pattern and mould making, resin infusion, and out-of-autoclave prepreg carbon fibre. If you're interested in learning the expert techniques of advanced composites in a hand-on way then visit our website for more information, course dates and online booking.How (and Why) to Vacuum Degas RTV Silicone Rubber and Casting Resins in a Degassing ChamberEasy Composites Ltd2013-05-07 | Buy Online from easycomposites.co.uk/ds26-p-professional-vacuum-degassing-system Video tutorial demonstrating the benefits of degassing materials like RTV silicone rubber and casting resins (like Fast Cast polyurethane or water-clears) to improve your moulds and castings. We use our Complete Vacuum Degassing System and demonstrate how simple the process is and why we do it at various stages such as during silicone mould making, before pouring casting resins and also in-mould degassing. For full information see: easycomposites.co.uk/ds26-p-professional-vacuum-degassing-systemHow to Repair a Damaged Composite Canoe or Kayak - Carbon/Kevlar FibreEasy Composites Ltd2012-06-24 | Step-by-step video tutorial showing how to repair light damage to a broken or damaged composite kayak, canoe or boat: easycomposites.co.uk/learning/composite-kayak-repair-tutorial Using Kevlar flat braid, carbon/kevlar reinforcement fabric and epoxy resin we patch-up impact damage on a water polo kayak. All equipment and supplies available from Easy Composites Ltd.How to Make a Carbon Fiber Car Bonnet/Hood - Part 3/3 : Trimming & AssemblyEasy Composites Ltd2012-04-22 | Incredible series of advanced composites video tutorials showing exactly how to make a professional carbon fibre (fiber) car bonnet/hood. In Part 3 of the series we trim the inner and outer carbon fibre skins using Perma-Grit tungsten carbide tools and finish them with sanding blocks and abrasive paper. We glue bonding fasteners in place for the hinge and latch mechanisms using ET500 epoxy adhesive before bonding the upper skin and the lower skin together using PT326 polyurethane adhesive to make the finished carbon fibre hood, ready to be fitted to a car. To see full details of this project, or purchasing any of the products used in the video please visit easycomposites.co.ukHow to Make a Carbon Fiber Car Bonnet/Hood - Part 2/3 : Resin InfusionEasy Composites Ltd2012-04-22 | Project page and full shipping list at: easycomposites.co.uk/learning/how-to-resin-infuse-a-carbon-fibre-bonnet
Incredible series of advanced composites video tutorials showing exactly how to make a professional carbon fibre (fiber) car bonnet/hood. In Part 2 of the series we use make the outer carbon fibre skin of the part using an epoxy compatible polyester gelcoat surface followed by 210g carbon fibre reinforcement with a Lantor Soric infusion grade core material and then another layer of 210g carbon fibre. The part is laminated with epoxy using the resin infusion method. The inner skin is made using resin infusion of a 210g and 650g layer of carbon fibre.
Incredible series of advanced composites video tutorials showing exactly how to make a professional carbon fibre (fiber) car bonnet/hood. In Part 1 of the series we demonstrate the process of making moulds for the inner and outer skin by using the original steel part.